Integrated cooker

The opening and closing of the smoke inlet channel is controlled by the regulating device in the integrated stove, and the steam is sucked in and discharged by the fan, which solves the risk of steam discharge when the steamer door is opened and improves the safety and efficiency of use.

CN223484281UActive Publication Date: 2025-10-28MARSSENGER KITCHENWARE CO LTD
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Patent Information

Application Number
CN202422795691.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-15
Publication Date
2025-10-28
Estimated Expiration
2034-11-15

AI Technical Summary

Technical Problem

After the steamer finishes cooking, a large amount of steam will be discharged when the door is opened, posing a risk of scalding. Waiting for the steam to cool will prolong the cooking time.

Method used

An adjustment device is provided in the integrated stove, including an adjustment plate and a driving component. The driving component controls the movement of the adjustment plate in the smoke inlet channel and the inner cavity of the bellows to realize the opening and closing of the smoke inlet channel. The fan is used to inhale and discharge steam, thereby reducing the steam volume and temperature when the door is opened.

Benefits of technology

Quickly reduce the amount of steam after opening the door, lower the temperature, reduce the risk of scalding, and improve safety and efficiency.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223484281U_ABST
    Figure CN223484281U_ABST
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Abstract

The utility model discloses an integrated stove, including machine body, smoke suction subassembly and steam cooking subassembly, smoke suction subassembly includes the smoke inlet channel, bellow and fan, the fan is located bellow, steam cooking subassembly includes liner and door body, the machine body is provided with the air inlet that is communicated with the outside, the air inlet is communicated with the air inlet channel, and the air inlet channel is communicated with the air inlet channel. The air inlet channel is communicated with the air inlet and an inner cavity of the air bellow, and the fan sucks steam discharged from the inner container into the air bellow from the air inlet through the air inlet channel and discharges the steam; the integrated cooker further comprises an adjusting device, the adjusting device comprises an adjusting plate and a driving part, and the driving part drives the adjusting plate to move and stretch into the smoke inlet channel or the inner cavity of the air box to close the smoke inlet channel when the door body is opened. When the door body is closed, the driving piece drives the adjusting plate to move out of the smoke inlet channel or the inner cavity of the air box to open the smoke inlet channel. The utility model provides an integrated cooker capable of quickly extracting steam discharged from an inner container.
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Description

Technical Field

[0001] This utility model relates to the technical field of kitchen stoves, and more particularly to an integrated stove. Background Technology

[0002] Integrated cooktops include range hoods, cooktops, and steam ovens. As highly integrated products, they occupy little space and have excellent fume extraction capabilities, making them increasingly popular in households. Steaming is the most frequently used function besides stir-frying. Currently, steam ovens mainly use internal or external heating devices to generate high-temperature steam for cooking. During cooking, it is important to prevent steam loss as much as possible. However, if the steam oven door is opened immediately after cooking, a large amount of steam will be released, posing a risk of burns to the cook. If the steam inside the cavity is allowed to cool down, the cooking time will increase. Utility Model Content

[0003] This invention provides an integrated stove that can quickly reduce the amount of steam and lower the temperature after the door is opened.

[0004] To achieve the above objectives, this utility model discloses an integrated stove, including a body, a smoke extraction component and a steam cooking component integrated into the body. The smoke extraction component includes a smoke inlet channel, a bellows, and a fan. The fan is located inside the bellows and draws smoke from the smoke inlet channel into the bellows cavity and then discharges it to the outside. The steam cooking component includes an inner liner and a door. The body is provided with an air inlet communicating with the outside. The air inlet is connected to an air inlet channel, which connects the air inlet and the bellows cavity. The fan draws steam discharged from the inner liner from the air inlet through the air inlet channel into the bellows cavity and then discharges it. The integrated stove also includes an adjustment device, which includes an adjustment plate and a drive component that drives the adjustment plate to move. When clearing steam discharged from the inner liner, the drive component drives the adjustment plate to move and extend into the smoke inlet channel or the bellows cavity to close the smoke inlet channel. After clearing the steam, the drive component drives the adjustment plate to move out of the smoke inlet channel or the bellows cavity to open the smoke inlet channel.

[0005] Optionally, the air box is provided with a transition port for connecting the smoke inlet channel and the inner cavity of the air box, at least a portion of the adjusting plate extends out of the transition port and is connected to the driving member, and the adjusting plate moves under the drive of the driving member to open or close the transition port.

[0006] Optionally, the adjusting device further includes a guide member, at least a portion of which is slidably connected to the adjusting plate, and the guide member is connected to the side wall of the smoke inlet channel or the air box.

[0007] Optionally, one of the guide member and the adjusting plate is provided with a guide groove, and the other of the guide member and the adjusting plate is provided with a guide block for sliding connection with the guide groove, the guide block sliding into one end of the guide groove.

[0008] Optionally, a blocking strip is provided above the guide member.

[0009] Optionally, the machine body is provided with a mounting plate, and at least a portion of the adjusting device is connected to the mounting plate, which is fixedly connected to the machine body.

[0010] Optionally, the mounting plate includes at least two angled folded edges that form a receiving space, and at least a portion of the adjusting device is located within the receiving space.

[0011] Optionally, the adjusting plate has a protrusion on one side facing the smoke inlet of the smoke inlet channel.

[0012] Optionally, the inner liner is provided with an exhaust port communicating with the inner cavity of the bellows, and an exhaust nozzle is provided at the exhaust port.

[0013] Optionally, the air intake channel is located above the inner liner, and the exhaust port is located at the top of the inner liner and connected to the air intake channel.

[0014] Compared with the prior art, the beneficial effects of this utility model are as follows: by rotating the connecting frame, the distance between the display screen and the base can be adjusted, and by rotating the display screen, the angle of the display screen relative to the connecting frame can be changed, so that users can adjust the display screen according to actual needs, thereby improving the user experience and convenience. Attached Figure Description

[0015] Figure 1 This is a structural schematic diagram of an integrated stove disclosed in this utility model;

[0016] Figure 2 This is a cross-sectional structural diagram of an integrated stove disclosed in this utility model;

[0017] Figure 3 yes Figure 2 A magnified view of a portion of the image;

[0018] Figure 4 This is a structural schematic diagram of an integrated stove disclosed in this utility model, mainly used to demonstrate the adjustment device;

[0019] Figure 5 This utility model discloses a schematic diagram of the main structure of an integrated stove used to display the mounting plate.

[0020] Explanation of reference numerals in the attached drawings: 1. Body; 2. Smoke extraction assembly; 21. Smoke inlet channel; 22. Air box; 23. Fan; 3. Steam cooking assembly; 31. Inner liner; 311. Exhaust nozzle; 312. Exhaust port; 32. Door; 41. Air inlet; 42. Air inlet channel; 420. Air inlet plate; 5. Adjustment device; 51. Adjustment plate; 511. Protrusion; 52. Drive component; 53. Guide groove; 54. Guide block; 55. Blocking strip; 56. Fixed bracket; 57. Guide component; 6. Transition port; 7. Mounting plate; 71. Horizontal folded edge; 72. Vertical folded edge; 8. Gas stove. Detailed Implementation

[0021] The present application is further described in detail below with reference to the accompanying drawings.

[0022] This application discloses an integrated stove, as shown in the embodiments below. Figure 1 It includes a main body 1, a smoke extraction component 2 integrated into the main body 1, a steam cooking component 3, and a gas stove 8.

[0023] Reference Figure 1 and Figure 2 The smoke extraction assembly 2 includes a smoke inlet channel 21, a bellows 22, a fan 23, and a blower head (not shown in the figure). The bellows 22 is located inside the body 1 and has a hollow inner cavity. The fan 23 is located inside the inner cavity of the bellows 22. The bellows 22 is provided with a transition port 6 communicating with the inner cavity, and the transition port 6 is connected to the smoke inlet channel 21, which is located inside the body 1. The blower head is connected to the body 1 and is provided with a smoke inlet, which is connected to the smoke inlet channel 21. The fan 23 creates a negative pressure inside the bellows 22. The smoke first enters the smoke inlet channel 21 from the smoke inlet, is then drawn into the inner cavity of the bellows 22, and is discharged to the outside through the outlet of the fan 23.

[0024] The steam cooking component 3 includes an inner liner 31 and a door 32. In this embodiment, the front side is the position where the user stands when using the integrated stove relative to one side of the integrated stove. The steam cooking component 3 is installed inside the body 1 and located in front of the air box 22. The inner pot 31 has a loading and unloading port. The door 32 is hinged to the bottom edge of the loading and unloading port of the inner pot 31. The loading and unloading port of the inner pot 31 can be opened when the door 32 is rotated. In order to quickly remove the steam overflowing when the door 32 is opened, the body 1 is provided with an air inlet 41 above the door 32. The air inlet 41 is connected to the outside. The body 1 is provided with an air intake channel 42 connected to the air inlet 41. The end of the air intake channel 42 away from the air inlet 41 is connected to the inner cavity of the air box 22. After the steam cooking component 3 has finished cooking, the large amount of steam overflowing when the door 32 is opened can enter the inner cavity of the air box 22 through the air intake channel 42 under the action of the fan 23, and then be discharged to the outside through the air outlet of the fan 23. This can quickly reduce the amount of steam when the door 32 is opened and lower the temperature, reducing the risk of the user being scalded.

[0025] In this embodiment, refer to Figure 2 The air inlet 41 is located on the front side of the body 1 facing outward, and above the door 32 and the inner liner 31. In other embodiments, the air inlet 41 may also be located on the left and right sides of the door 32 near the top, or above the top of the door 32 and on the left and right sides.

[0026] In this embodiment, an air intake plate 420 is provided above the inner liner 31 inside the body 1, and an air intake channel 42 is provided inside the air intake plate 420. The air intake plate 420 is located between the gas stove 8 and the steam cooking component 3, and can also reduce heat conduction.

[0027] The inner liner 31 is also provided with an exhaust port 312 that communicates with the inner cavity of the bellows 22. An exhaust nozzle 311 is provided at the exhaust port 312. The exhaust port 312 can directly connect the inner liner 31 and the inner cavity of the bellows 22, or the exhaust port 312 can first connect with the air intake channel 42 and then connect with the inner cavity of the bellows 22. In this example, the exhaust port 312 is located at the top of the inner liner 31 and is first connected to the air intake channel 42.

[0028] Reference Figure 3 , Figure 4 and Figure 5 To adapt to different usage situations, the integrated stove also includes an adjustment device 5, which includes an adjustment plate 51 and a drive component 52. When the door 32 is open, the drive component 52 drives the adjustment plate 51 to move and extend into the smoke inlet channel 21 or the inner cavity of the air box 22 to close the smoke inlet channel 21. When the door 32 is closed, the drive component 52 drives the adjustment plate 51 to move and exit the inner cavity of the smoke inlet channel 21 or the air box 22 to open the smoke inlet channel 21.

[0029] In this embodiment, at least a portion of the adjusting plate 51 extends out of the transition port 6 and is connected to the driving member 52. The adjusting plate 51 moves under the drive of the driving member 52 to open or close the transition port 6. When it is necessary to open the smoke inlet channel 21 for fume extraction, the adjusting plate 51 can be completely withdrawn from the smoke inlet channel 21 under the action of the driving member 52, reducing the accumulation of oil on the adjusting plate 51 and extending the service life of the driving member 52 by keeping it out of the smoke inlet channel 21.

[0030] In other embodiments, the transition port 6 can be part of the smoke inlet channel 21 or part of the inner cavity of the bellows 22.

[0031] Reference Figure 4 In order to make the movement of the adjusting plate 51 more stable, the adjusting device 5 also includes a guide 57, at least a portion of the adjusting plate 51 is slidably connected to the guide 57, and the guide 57 is connected to the side wall of the smoke inlet channel 21 or the air box 22.

[0032] In this embodiment, the guide members 57 are two slide rails extending along the front-rear direction of the integrated stove. The two guide members 57 are respectively located on one side of the length direction of the adjusting plate 51. A guide groove 53 extending along the front-rear direction of the integrated stove is provided on the guide member 57. A guide block 54 is fixed on the adjusting plate 51 and slidably connected to the guide groove 53. The front end of the guide groove 53 penetrates the front end face of the guide member 57. The guide block 54 can slide into the guide groove 53 from the front end face of the guide member 57, thereby facilitating the installation of the guide block 54 and the adjusting plate 51. The guide members 57 can be fixed to the inner wall of the smoke inlet channel 21 or the inner cavity of the air box 22 by bolts.

[0033] A gap is left between the guide block 54 and the rear edge of the adjusting plate 51 so that when the rear edge of the adjusting plate 51 abuts against the inner wall of the transition port 6, the guide block 54 will not slide out of the rear end of the guide groove 53.

[0034] In other embodiments, the guide block 54 may be a protruding part of the guide member 57 and extend along the front-rear direction of the integrated stove, and the guide groove 53 is provided on the adjustment plate 51.

[0035] In other embodiments, the direction of movement of the adjusting plate 51 driven by the driving member 52 can be a horizontal linear movement, an inclined linear movement at an angle to the horizontal direction, a zigzag movement, or a rotation along an arc. In the embodiment of rotation along an arc, the driving member 52 drives the adjusting plate 51 to rotate around an axis. The driving member 52 is located outside the smoke inlet channel 21. When it is necessary to close the smoke inlet channel 21, the driving member 52 drives the adjusting plate 51 to rotate to the horizontal. When it is necessary to open the smoke inlet channel 21, the driving member 52 drives the adjusting plate 51 to rotate at an angle greater than 90°, so that the surface of the adjusting plate 51 is not on the same plane as the inner wall of the smoke inlet channel 21, thus preventing the oil on the inner wall of the smoke inlet channel 21 from accumulating on the adjusting plate 51. The shape and structure of the guide member 57 can be adapted to the movement trajectory of the adjusting plate 51.

[0036] To reduce the impact of oil on the performance of the guide member 57, a blocking strip 55 is provided above the guide member 57. In this embodiment, the guide member 57 is connected to a fixed bracket 56, and the top flange of the fixed bracket 56 forms the blocking strip 55. In the vertical projection, the blocking strip 55 covers the guide member 57 and the guide block 54, and the blocking strip 55 extends along the extension direction of the guide member 57, making it difficult for oil to drip into the guide groove 53 and affect the sliding of the guide block 54. In other embodiments, the blocking strip 55 can be part of the inner wall of the body 1 or a part fixed to the inner wall of the body 1.

[0037] In this embodiment, refer to Figure 4 and Figure 5 The driving component 52 is a push rod motor, and the output shaft of the push rod motor and the front edge of the adjusting plate 51 extending out of the transition port 6 are fixed by bolts. In other embodiments, the driving component 52 may also be a rotary motor. In other embodiments, the connection between the driving component 52 and the adjusting plate 51 may be hinged or allow for relative rotation and relative sliding within a waist-shaped groove.

[0038] In this embodiment, the stroke of the push rod motor is the width of the smoke inlet channel 21 from the front to the rear. The width of the adjusting plate 51 from the front to the rear is close to the width of the smoke inlet channel 21, so that the adjusting plate 51 can be completely retracted from the smoke inlet channel 21 when the smoke inlet channel 21 is opened, and can also be completely closed when the smoke inlet channel 21 needs to be closed.

[0039] To better install the adjustment device 5, the body 1 is provided with a mounting plate 7, at least a portion of the adjustment device 5 is connected to the mounting plate 7, and the mounting plate 7 is fixedly connected to the body 1.

[0040] In this embodiment, the mounting plate 7 has two angled folded edges forming an open receiving space, within which the drive member 52 is located. The horizontal folded edge 71 of the mounting plate 7 rests against the outer wall of the smoke inlet channel 21, while the vertical folded edge 72 extends downwards, with the housing of the push rod motor fixed to the rear wall of the vertical folded edge 72. The drive member 52 is not visible when viewed vertically or from the front to the rear. The inner cavity of the bellows 22 may or may not communicate with the receiving space.

[0041] The integrated stove is equipped with a control mechanism, which includes a controller for receiving control signals and controlling the direction of movement of the push rod motor output shaft. Alternatively, a sensor can be installed to receive and send signals indicating whether the door 32 is closed. The controller can receive the sensor's signal and output corresponding control commands. When the sensor detects that the door 32 is closed, it transmits the closed signal to the controller, which then controls the push rod motor to move the adjusting plate 51 forward, opening the smoke inlet channel 21. When the sensor detects that the door 32 is open, it transmits the open signal to the controller, which then controls the push rod motor to move the adjusting plate 51 backward, closing the smoke inlet channel 21. The sensor can be a photoelectric sensor, a microswitch sensor, or a reed switch sensor.

[0042] The working principle of this embodiment is as follows: the air inlet channel 42 and the inner cavity of the bellows 22, as well as the exhaust port 312 and the inner cavity of the bellows 22, are normally open. The smoke inlet channel 21 and the inner cavity of the bellows 22 are opened and closed by the adjusting device 5. When the steam cooking component 3 is working, the door 32 is closed. At this time, the driving component 52 drives the adjusting plate 51 to move forward, causing the adjusting plate 51 to exit the smoke inlet channel 21, thereby keeping the smoke inlet channel 21 and the inner cavity of the bellows 22 connected. The smoke mainly enters the inner cavity of the bellows 22 through the smoke inlet of the head through the smoke inlet channel 21 and is discharged through the exhaust port of the fan 23. The amount of gas discharged from the inner liner 31 through the exhaust port 312 is relatively small, which is beneficial for maintaining the temperature of the inner liner 31. After the steam cooking component 3 finishes cooking, the food needs to be removed and the door 32 is opened. At this time, the drive component 52 drives the adjustment plate 51 to move backward, closing the smoke inlet channel 21. This allows the fan 23 to draw the steam overflowing from the inner liner 31 into the inner cavity of the air box 22 through the air inlet 41 and the air inlet channel 42. The high-temperature gas in the inner liner 31 is discharged into the inner cavity of the air box 22 through the exhaust nozzle 311 and then discharged from the outlet of the fan 23. By blocking the smoke inlet channel 21 and the inner cavity of the air box 22, the suction force of the fan 23 on the air inlet channel 42 and the exhaust nozzle 312 can be increased, accelerating the steam to enter the inner cavity of the air box 22 and reducing the risk of burns from high-temperature steam when the door 32 is opened.

[0043] In addition, this embodiment also has another method of heat dissipation for the inner liner. After the steam cooking component 3 finishes cooking, the drive component 52 moves the adjustment plate 51 to the rear to close the smoke inlet channel 21. At this time, the door 32 is in a closed state. The fan 23 is started to draw in outside air from the air inlet 41 and enters the fan 23. Under the negative pressure of the outside air, the high-temperature steam in the inner liner 31 is continuously extracted and enters the fan 23 together to realize the exhaust and heat dissipation of the inner liner. After the inner liner 31 has finished exhausting steam, the door 32 is opened to avoid direct contact between the human body and the high-temperature steam and prevent burns.

[0044] The above are all preferred embodiments of the present application, and are not intended to limit the scope of protection of the present application. Therefore, any equivalent changes made based on the structure, shape, and principle of the present application should be included in the scope of protection of the present application.

Claims

1. An integrated stove, comprising a body (1), a smoke extraction assembly (2) and a steam cooking assembly (3) integrated into the body (1), wherein the smoke extraction assembly (2) includes a smoke inlet channel (21), a bellows (22) and a fan (23), the fan (23) being located inside the bellows (22), the fan (23) drawing smoke from the smoke inlet channel (21) into the inner cavity of the bellows (22) and then discharging it to the outside; the steam cooking assembly (3) includes an inner liner (31) and a door (32), characterized in that, The body (1) is provided with an air inlet (41) communicating with the outside. The air inlet (41) is connected to an air intake channel (42). The air intake channel (42) connects the air inlet (41) and the inner cavity of the air box (22). The fan (23) draws the steam discharged from the inner liner (31) from the air inlet (41) through the air intake channel (42) into the air box (22) and then discharges it. The integrated stove also includes an adjustment device (5). The adjustment device (5) includes an adjustment mechanism. The plate (51) and the driving member (52) that drives the adjusting plate (51) to move. When the steam discharged from the inner liner (31) is cleared, the driving member (52) drives the adjusting plate (51) to move and extend into the inner cavity of the smoke inlet channel (21) or the bellows (22) to close the smoke inlet channel (21). After the steam is cleared, the driving member (52) drives the adjusting plate (51) to move and exit the inner cavity of the smoke inlet channel (21) or the bellows (22) to open the smoke inlet channel (21).

2. An integrated stove according to claim 1, characterized in that, The air box (22) is provided with a transition port (6) for connecting the smoke inlet channel (21) and the inner cavity of the air box (22). At least part of the adjusting plate (51) extends out of the transition port (6) and is connected to the driving member (52). The adjusting plate (51) moves under the drive of the driving member (52) to open or close the transition port (6).

3. An integrated stove according to claim 1, characterized in that, The adjustment device (5) further includes a guide (57), at least a portion of the adjustment plate (51) is slidably connected to the guide (57), and the guide (57) is connected to the side wall of the smoke inlet channel (21) or the air box (22).

4. An integrated stove according to claim 3, characterized in that, One of the guide member (57) and the adjusting plate (51) is provided with a guide groove (53), and the other of the guide member (57) and the adjusting plate (51) is provided with a guide block (54) for sliding connection with the guide groove (53), the guide block (54) sliding into one end of the guide groove (53).

5. An integrated stove according to claim 4, characterized in that, A blocking strip (55) is provided above the guide (57).

6. An integrated stove according to claim 1, characterized in that, The body (1) is provided with a mounting plate (7), at least a portion of the adjusting device (5) is connected to the mounting plate (7), and the mounting plate (7) is fixedly connected to the body (1).

7. An integrated stove according to claim 6, characterized in that, The mounting plate (7) includes at least two angled folded edges that form a receiving space, and at least a portion of the adjusting device (5) is located within the receiving space.

8. An integrated stove according to claim 1, characterized in that, The adjusting plate (51) has a protrusion (511) on one side facing the smoke inlet of the smoke inlet channel (21).

9. An integrated stove according to claim 1, characterized in that, The inner liner (31) is provided with an exhaust port (312) that communicates with the inner cavity of the bellows (22), and an exhaust nozzle (311) is provided at the exhaust port (312).

10. An integrated stove according to claim 9, characterized in that, The air intake channel (42) is located above the inner liner (31), and the exhaust port (312) is located at the top of the inner liner (31) and connected to the air intake channel (42).